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miR-24-3p 在人 Barrett 食管心脏型上皮肠化模型中调节 CDX2 的表达。

miR-24-3p regulates CDX2 during intestinalization of cardiac-type epithelium in a human model of Barrett's esophagus.

机构信息

Gastroesophageal Carcinogenesis Research Group, Hospital del Mar Medical Research Institute (IMIM), Barcelona, Spain.

Department of Medicine (DIMED), Surgical Pathology and Cytopathology Unit, University of Padua, Padua, Italy.

出版信息

Dis Esophagus. 2021 Jul 12;34(7). doi: 10.1093/dote/doab005.

Abstract

BACKGROUND

Cardiac-type epithelium has been proposed as the precursor of intestinal metaplasia in the development of Barrett's esophagus. Dysregulation of microRNAs (miRNAs) and their effects on CDX2 expression may contribute to intestinalization of cardiac-type epithelium. The aim of this study was to examine the possible effect of specific miRNAs on the regulation of CDX2 in a human model of Barrett's esophagus.

METHODS

Microdissection of cardiac-type glands was performed in biopsy samples from patients who underwent esophagectomy and developed cardiac-type epithelium in the remnant esophagus. OpenArray™ analysis was used to compare the miRNAs profiling of cardiac-type glands with negative or fully positive CDX2 expression. CDX2 was validated as a miR-24 messenger RNA target by the study of CDX2 expression upon transfection of miRNA mimics and inhibitors in esophageal adenocarcinoma cell lines. The CDX2/miR-24 regulation was finally validated by in situ miRNA/CDX2/MUC2 co-expression analysis in cardiac-type mucosa samples of Barrett's esophagus.

RESULTS

CDX2 positive glands were characterized by a unique miRNA profile with a significant downregulation of miR-24-3p, miR-30a-5p, miR-133a-3p, miR-520e-3p, miR-548a-1, miR-597-5p, miR-625-3p, miR-638, miR-1255b-1, and miR-1260a, as well as upregulation of miR-590-5p. miRNA-24-3p was identified as potential regulator of CDX2 gene expression in three databases and confirmed in esophageal adenocarcinoma cell lines. Furthermore, miR-24-3p expression showed a negative correlation with the expression of CDX2 in cardiac-type mucosa samples with different stages of mucosal intestinalization.

CONCLUSION

These results showed that miRNA-24-3p regulates CDX2 expression, and the downregulation of miRNA-24-3p was associated with the acquisition of the intestinal phenotype in esophageal cardiac-type epithelium.

摘要

背景

心脏型上皮细胞被认为是巴雷特食管发生肠上皮化生的前体细胞。microRNAs(miRNAs)的失调及其对 CDX2 表达的影响可能导致心脏型上皮细胞的肠化。本研究旨在探讨特定 miRNAs 对人 Barrett 食管模型中 CDX2 调节的可能影响。

方法

对接受食管切除术且残留食管出现心脏型上皮细胞的患者的活检样本进行心脏型腺体的显微解剖。采用 OpenArrayTM 分析比较心脏型腺体的 miRNA 谱与 CDX2 阴性或完全阳性表达。通过在食管腺癌细胞系中转染 miRNA 模拟物和抑制剂研究 CDX2 表达,验证 CDX2 是 miR-24 信使 RNA 靶标。最后通过 Barrett 食管心脏型黏膜样本中的原位 miRNA/CDX2/MUC2 共表达分析验证 CDX2/miR-24 调节。

结果

CDX2 阳性腺体的 miRNA 谱具有独特特征,miR-24-3p、miR-30a-5p、miR-133a-3p、miR-520e-3p、miR-548a-1、miR-597-5p、miR-625-3p、miR-638、miR-1255b-1 和 miR-1260a 的表达明显下调,miR-590-5p 的表达上调。三个数据库鉴定 miR-24-3p 为 CDX2 基因表达的潜在调节因子,并在食管腺癌细胞系中得到证实。此外,miR-24-3p 的表达与不同肠化阶段心脏型黏膜样本中 CDX2 的表达呈负相关。

结论

这些结果表明,miR-24-3p 调节 CDX2 表达,miR-24-3p 的下调与食管心脏型上皮细胞获得肠表型有关。

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